Digital Image Encryption Algorithm Based on Three-Dimension Lorenz Chaos System
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摘要: 鑒于傳統圖像加密技術和低維混沌加密技術各自的局限性,將Lorenz混沌系統與數字圖像置亂技術相結合,設計了一種基于三維混沌系統的數字圖像加密算法.首先,對系統輸出的實數值混沌序列進行預處理;其次,以此實數值混沌序列直接構造圖像置亂索引矩陣;最后,以8×8塊為單位實現數字圖像的空域加密.分析與仿真結果表明:預處理后的實數值混沌序列具有更強的偽隨機特性,更理想的相關特性;三維混沌系統有更大的密鑰空間,使算法具有很強的抗破譯性和抗攻擊性;系統三維輸出的同時利用,可實現三個或多幅圖像的并行加密,提高了算法的加密效率.Abstract: The Lorenz chaos system was applied to the digital image encryption based on the thought of the higher secrecy of a three-dimension chaos system. Firstly, it carried out pretreatment to a real chaos sequence produced by the system. Secondly, the index matrix of pixel permutation was structured directly by this real chaos sequence. Finally, digital image encryption was realized in the space domain. The results of analysis and simulation show that pretreating the real chaos sequence has the stronger pseudo-random, the better autocorrelation and mutual correlation characteristic. Additionally, the bigger secret-key space of the three-dimension chaos system, the stronger the algorithm can be against decryption attack. Three outputs of the system not only can realize the parallel encryption of three or more images, but also increase the more encryption efficiency of the algorithm.
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Key words:
- image encryption /
- Lorenz system /
- pretreatment /
- encryption index matrix
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